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Firing patterns and complete synchronization of coupled Hindmarsh-Rose neurons

机译:耦合Hindmarsh-Rose神经元的射击模式和完全同步

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The firing activities of Hindmarsh-Rose (HR) neurons are studied by means of numerical simulation and bifurcation analysis. A single HR neuron exhibits various firing patterns, such as quiescent state, periodic spiking, periodic bursting and chaos, when the external current input is changed. The fast/slow dynamical analysis is applied to explore the dynamical behaviour of the HR model. The complete synchronization of two coupled identical HR neurons with electrical coupling mimicking gap junctions can be realized in certain ranges of the coupling strength, whenever each individual neuron shows quiescency, periodic firing and chaos. The criteria for complete synchronization are analysed theoretically, and the corresponding numerical simulation is presented as well. The persistence of the interspike intervals bifurcation structure of the coupled HR neuronal system under electrical coupling is also discussed.
机译:通过数值模拟和分叉分析研究了Hindmarsh-Rose(HR)神经元的放电活性。当更改外部电流输入时,单个HR神经元会表现出多种激发模式,例如静态,周期性尖峰,周期性突发和混沌。应用快速/慢速动力学分析来探索HR模型的动力学行为。每当每个单独的神经元显示出静默,周期性发射和混乱时,就可以在一定的耦合强度范围内实现两个耦合的相同HR神经元与模拟间隙连接的电耦合的完全同步。从理论上分析了完全同步的准则,并给出了相应的数值模拟。还讨论了在电耦合下耦合的HR神经元系统的尖峰间隔分叉结构的持久性。

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